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Amsp3 可能在蜜蜂(Apis mellifera)的雌性等级分化中上游作用于 Amdnmt3。

Amsp3 may act upstream of Amdnmt3 in female caste differentiation in the honeybee (Apis mellifera).

机构信息

Honeybee Research Institute, Jiangxi Agricultural University, Nanchang, Jiangxi, 330045, China.

Jiangxi Province Key Laboratory of Honeybee Biology and Beekeeping, Jiangxi Agricultural University, Nanchang, Jiangxi, 330045, China.

出版信息

Insect Mol Biol. 2021 Oct;30(5):532-540. doi: 10.1111/imb.12723. Epub 2021 Jul 14.

Abstract

In honey bees, the process of producing two female castes, including queens and workers, is nutritionally controlled by differential feeding royal jelly to newly emerged larvae. Although they have almost identical genetic blueprints, these castes show striking differences in their morphologies, longevities and reproductive capabilities. DNA methyltransferase 3 (Amdnmt3) gene is involved in the regulatory network for honeybee caste differentiation. Due to the role of two zinc fingers containing transcription factors, SP1 and SP3 in controlling mammalian Dnmts, this study aimed to determine a similar interaction of SPs with Amdnmt3 in the honeybee. We confirmed that the promoter region of Amdnmt3 contained multiple predicted SP1/SP3 binding sites and then investigated the role of AmSP3 in queen-worker differentiation network. We observed that the expression level of Amsp3 was significantly higher in worker larvae than that in queen larvae at 48 h, 84 h and 120 h. Knockdown of Amsp3 expression by RNAi in worker larvae significantly reduced the expression level of Amdnmt3 and caused morphological changes in adult bees towards a queen-like phenotype. However, the expression levels of Amsp3 and Amdnmt3 were repressed by juvenile hormone (JH). Our results suggest that AmSP3 is an important part of the queen-worker differentiation network and supports the role of Amdnmt3 in determining the phenotypic outcome of developing larvae.

摘要

在蜜蜂中,产生两种雌性等级,包括蜂王和工蜂的过程是通过向新出现的幼虫不同地喂食蜂王浆来营养控制的。尽管它们具有几乎相同的遗传蓝图,但这些等级在形态、寿命和生殖能力方面表现出显著的差异。DNA 甲基转移酶 3(Amdnmt3)基因参与了蜜蜂等级分化的调控网络。由于含有两个锌指的转录因子 SP1 和 SP3 控制哺乳动物 Dnmts 的作用,本研究旨在确定 SP 与 Amdnmt3 在蜜蜂中的类似相互作用。我们证实 Amdnmt3 的启动子区域包含多个预测的 SP1/SP3 结合位点,然后研究了 AmSP3 在蜂王-工蜂分化网络中的作用。我们观察到,在 48 h、84 h 和 120 h 时,Amsp3 的表达水平在工蜂幼虫中明显高于蜂王幼虫。在工蜂幼虫中通过 RNAi 敲低 Amsp3 表达水平显著降低了 Amdnmt3 的表达水平,并导致成年蜜蜂的形态发生向蜂王样表型的变化。然而,Amsp3 和 Amdnmt3 的表达水平受到保幼激素(JH)的抑制。我们的结果表明,AmSP3 是蜂王-工蜂分化网络的重要组成部分,并支持 Amdnmt3 在决定发育幼虫表型结果中的作用。

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